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Petroleum hydrocarbon biodegradation under seasonal freeze-thaw soil temperature regimes in contaminated soils from a sub-Arctic site

机译:季冻融土壤温度条件下亚北极地区受污染土壤中石油碳氢化合物的生物降解

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摘要

Several studies have shown that biostimulation in ex situ systems such as landfarms and biopiles can facilitate remediation of petroleum hydrocarbon contaminated soils at sub-Arctic sites during summers when temperatures are above freezing. In this study, we examine the biodegradation of semivolatile (F2: C10-C16) and nonvolatile (F3: C16-C34) petroleum hydrocarbons and microbial respiration and population dynamics at post- and presummer temperatures ranging from -5 to 14 \ub0C. The studies were conducted in pilot-scale tanks with soils obtained from a historically contaminated sub-Arctic site in Resolution Island (RI), Canada. In aerobic, nutrient-amended, unsaturated soils, the F2 hydrocarbons decreased by 32% during the seasonal freeze-thaw phase where soils were cooled from 2 to -5 \ub0C at a freezing rate of -0.12 \ub0C d-1 and then thawed from -5 to 4 \ub0C at a thawing rate of +0.16 \ub0C d-1. In the unamended (control) tank, the F2 fraction only decreased by 14% during the same period. Biodegradation of individual hydrocarbon compounds in the nutrient-amended soils was also confirmed by comparing their abundance over time to that of the conserved diesel biomarker, bicyclic sesquiterpanes (BS). During this period, microbial respiration was observed, even at subzero temperatures when unfrozen liquid water was detected during the freeze-thaw period. An increase in culturable heterotrophs and 16S rDNA copy numbers was noted during the freezing phase, and the 14C-hexadecane mineralization in soil samples obtained from the nutrient-amended tank steadily increased. Hydrocarbon degrading bacterial populations identified as Corynebacterineae- and Alkanindiges-related strains emerged during the freezing and thawing phases, respectively, indicating there were temperature-based microbial community shifts.
机译:几项研究表明,在夏季温度高于冰冻的夏季,对异地系统(如农田和生物堆)中的生物刺激可以促进补救亚北极地区石油烃污染的土壤。在这项研究中,我们研究了在-5至14 \ ub0C的温度下,半挥发性(F2:C10-C16)和非挥发性(F3:C16-C34)石油烃的生物降解以及微生物的呼吸作用和种群动态。这项研究是在中试规模的储罐中进行的,这些储罐的土壤是从加拿大分辨率岛(RI)的一个受历史污染的亚北极地区获得的。在需氧,经过营养素改良的不饱和土壤中,F2碳氢化合物在季节性冻融阶段下降了32%,在该季节中,土壤从2冷却到-5 \ ub0C,以-0.12 \ ub0C d-1的冷冻速率融化然后融化-5至4 \ ub0C的解冻速率为+0.16 \ ub0C d-1。在未经修改的(控制)储罐中,F2分数在同一时期仅下降了14%。通过将养分改良土壤中的各种烃类化合物随时间推移的变化与保存的柴油生物标记物双环倍半萜烯(BS)进行比较,也证实了这些烃类化合物的生物降解。在此期间,即使在冻融期间检测到未冻结的液态水时,即使在零下温度下也观察到了微生物的呼吸作用。在冷冻期注意到可培养的异养菌和16S rDNA拷贝数增加,并且从营养改良池获得的土壤样品中14 C-十六烷矿化稳定增加。鉴定为棒状杆菌和链霉菌相关菌株的可降解烃的细菌种群分别在冷冻和融化阶段出现,表明存在基于温度的微生物群落转移。

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